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首页> 外文期刊>Journal of Bioactive and Compatible Polymers >Surface Pressure Analysis of Poly(ethylene oxide)-Modified Fusogenic Liposomes Incorporated into a Phospholipid Monolayer
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Surface Pressure Analysis of Poly(ethylene oxide)-Modified Fusogenic Liposomes Incorporated into a Phospholipid Monolayer

机译:掺入磷脂单层的聚环氧乙烷修饰的融合脂质体的表面压力分析

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摘要

Fusogenic liposomes have a wide-range of applications as DDS and gene/protein delivery into living cells.A variety of surface modifications of drug carriers,to enable fusion with cells,have been proposed,however,the mechanism of fusion has still not been determined.To further improve the efficiency of drug carriers,a simple and easily examinable model of a living cell surface is needed.In this study,the time-course of a fusion phenomena was made by measuring the surface pressure increase of a phospholipid monolayer spread at the air/water interface due to the fusion of liposomes carrying PEO-lipid (dialkyl-terminated polyethylene oxide)reconstituted on their outer surface.The kinetics of the surface pressure change appeared to be bimodal,indicating the coexistence of different fusion pathways.It was found that the presence of the PEO-lipid on the liposome surface led to a faster lipid transfer compared to non-modified DMPC liposomes.This indicated that the reconsti-tution of PEO-lipid provided an alternative transfer pathway to that for non-fusogenic liposomes that show only a slow lipid transfer to phospholipid monolayers.The relation between the rate of fusion and the surface pressure of the host membrane is discussed.
机译:融合脂质体具有广泛的应用,如DDS和基因/蛋白质向活细胞中的传递。已经提出了多种药物载体的表面修饰方法,可以与细胞融合,但是,融合机理尚未确定。为了进一步提高药物载体的效率,需要一个简单且易于检查的活细胞表面模型。在这项研究中,通过测量磷脂单分子层在60nm处扩散的表面压力升高来确定融合现象的时程。由于在外表面带有PEO-脂质(二烷基封端的聚环氧乙烷)的脂质体的融合,空气/水界面重新构成,表面压力变化的动力学似乎是双峰的,表明了不同融合途径的共存。发现与未修饰的DMPC脂质体相比,脂质体表面上PEO-脂质的存在导致脂质转移更快。这表明PEO-脂质的重构提供了非融合脂质体的替代传递途径,后者仅显示脂质向磷脂单层的缓慢传递。讨论了融合速率与宿主膜表面压力之间的关系。

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